Using cellulose nanocrystals to improve the mechanical properties of fly ash-based geopolymer construction materials
被引:17
作者:
论文数: 引用数:
h-index:
机构:
Roopchund, Rishen
[1
,2
]
论文数: 引用数:
h-index:
机构:
Andrew, Jerome
[3
]
论文数: 引用数:
h-index:
机构:
Sithole, Bruce
[1
,3
]
机构:
[1] Univ KwaZulu Natal, Discipline Chem Engn, Durban, South Africa
[2] Univ Johannesburg, Dept Chem Engn, 55 Beit St, ZA-2028 Johannesburg, South Africa
[3] Council Sci & Ind Res CSIR, Biorefinery Ind Dev Facil, Durban, South Africa
来源:
ENGINEERING SCIENCE AND TECHNOLOGY-AN INTERNATIONAL JOURNAL-JESTECH
|
2022年
/
25卷
关键词:
Waste beneficiation;
Fly ash geopolymers;
Cellulose nanocrystals;
Green construction materials;
Non-conventional building materials;
CORROSION RATE;
RESISTIVITY;
TECHNOLOGY;
CONCRETE;
STRENGTH;
D O I:
10.1016/j.jestch.2021.04.008
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
Ordinary Portland cement production is one of the biggest emitters of carbon dioxide. Consequently, there is a strong need for construction materials with lower environmental footprints. However, the development of alternative green construction materials requires a standardized framework. Although cellulose nanocrystals have shown considerable reinforcement potential in conventional construction materials, its effect on the mechanical properties of fly ash-based geopolymers as green construction materials is not known. Consequently, a detailed database outlining the cellulose nanocrystals interactions on the compressive strength, density, and corrosion resistance properties of geopolymers can optimize and guide further research efforts. The aims of this study were to firstly determine the effect of cellulose nanocrystals on the mechanical properties of fly ash-based geopolymers. Secondly, to produce a database of the effects of cellulose nanocrystals concentration and activator concentration on the mechanical properties of the formed geopolymers. Finally, to formulate an empirical framework to develop green construction materials. An empirical framework was developed alongside the cellulose nanocrystals-reinforced geopolymers, which were optimized using a statistical experimental design. The experimental results yielded the geopolymer property database. It was found that low cellulose nanocrystals concentrations (less than 0.5%) favoured the geopolymer mechanical properties. Using industrial wastes to produce green construction materials can divert industrial wastes from landfills and minimize the widespread use of environmentally degrading conventional construction materials. The framework developed in this study can facilitate the commercialization of green construction materials in industry.(C) 2021 Karabuk University. Publishing services by Elsevier B.V. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
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页数:17
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